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CEE BEE ZERO TWO Construction to Destruction - A Case Study
By Deepak Vidyarthi
This paper deals with various measures adopted in protecting a conveyor duct (named after a Conveyor Belt that was numbered as ‘02’) housing a 1600 mm (63 inches) belt conveyor system in a large, heav
Jan 1, 2008
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Shock Waves and Detonations, Explosive Performance (Tiger Code Theory)
By Per-Anders Persson
This chapter deals with the concepts ofshock waves aud detonation waves together, because a detonation wave is really a shock wave, supported by the explosive reaction that the shock wave ignites and
Jan 1, 1994
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Basics of Salt Blasting
By Anthony J. Konya
"This paper was written during part of the author’s student co-op with Cargill Salt at its Avery Islandunderground salt mine in Louisiana. Blasting salt is a unique type of blasting that is different
Jan 1, 2016
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A Modern Analytical Approach to Generating Site Specific Blast Designs
By Bruce Vandenberg
A 3D, PC based computer program is currently under development by Blasting Analysis International, Inc., to analyze the kinetics of full scale blasts with two or more high-speed motion picture cameras
Jan 1, 1990
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Semiconductor Bridge (SCB) Research and Development
By C B. McCampbell, R W. Jr Bickes
Sandia National Laboratories has developed a semiconductor bridge (SCB) igniter for the ignition of a variety of explosive materials. When subjected to a low-energy current pulse, the bridge bursts in
Jan 1, 1991
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High Resolution Seismic Refractin Temography for Determining Depth of Blast Induced Damage in a Mine Wall
By J A. Singer, S R. Iverson, C A. Link
High resolution seismic refraction tomography has proved to be a useful tool to effectively estimate depth of blast induced damage in a mine face. Excavation blast damage can be as shallow as 1 to 2m
Jan 1, 2009
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Vibration Effects on Historic Structures
By Randy Wheeler
One of the more difficult topics to address concerns the effects of vibration on historic structures. Not only blast induced vibration, but also vibration from other transient and semi-continuous sour
Jan 1, 2004
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Lightning Detection and Warning Systems
By William H. Highlands
Lightning is a natural phenomenon which poses a potential hazard to people, structures, and equipment unless adequate protection is provided. The type of protection required is related to the nature a
Jan 1, 1989
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Vibration Control in a Tunnel Project under an Existing Hospital
By Pertti Paavola, Hikki Rasanen
This paper describes a very exacting tunneling project. Planning and technical realization of this service and transportation tunnel was especially difficult as a matter of vibration control, because
Jan 1, 1997
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Using Vibration Prediction to Reduce Blasting Costs and Complaints (c2b05a63-1c96-45ce-a036-acc1a0a37215)
By Thomas Leonard, Philip R. Berger, Bryan E. Papillon
Bardon Trimount Inc., a large producer of aggregate, crushed stone, and concrete, was experiencing significant public opposition to its five quarries in the Boston area. It was believed by the authors
Jan 1, 1996
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Strategic Public Relations for Underground Conservatory at Tennessee Governor’s Residence
By Jake Hutchison, Wade Hutchison
The opposition to the project has risen as a result of some political pressures and from public perceptions about the project’s necessity and its impact on the neighborhood. As a result of this contro
Jan 1, 2009
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Synergy of Seismic, Acoustic and Video Signals in Blast Analysis
By Brian W. Stump, David P. Anderson, John Wiegand
Mining explosions are designed for a variety of purposes including the fragmentation and movement of materials. The blast design is dependent on the particular application intended and the material pr
Jan 1, 1997
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Highway Lane Rental Requirement Compromises Blast Site Safety and Security
By Harry L. Siebert
A major Arizona highway project is jeopardizing site safety and security because of the lane rental policy. One million cubic yards of rock must be fragmented to provide two additional lanes parallel
Jan 1, 1997
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Blast-Induced Heave Modeling in Three Dimensions
By Dale Preece, Ayman Tawadrous
This paper presents a number of examples of three-dimensional blast modeling in both surface and underground environments that include time-delay explosive decking. These examples include: 1) quarry b
Jan 1, 2014
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Blast Assessment and Optimization with Respect to the Control of Environmental Effects
By Frank Sames
The control of the environmental effects, especially blast vibration and airblast, has become a dominating planning criterion for most surface blasting operations. Compliance with existing regulations
Jan 1, 1997
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Blasting in the New Mellinnium: Planning for the Unexpected
By Steve Dillingham
The horrific events surrounding September 11th left Americans with a feeling of sudden helplessness...the shock of being unprepared and powerless. From this tragedy, we can understand the need to prep
Jan 1, 2003
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Journal: 100 Years / Engineering News New York January 5, 1905 Methods and Cost of Blasting and Handling Boulders (52912f89-42e4-4811-8c7f-344764181b42)
By Daniel Hauer
Blocking. (5) The “blocking” of boulders is a much cheaper way of breaking them up than “mud capping.” It should always be used in preference to that method except when too much time will be consumed
Jan 1, 2006
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Controlled Blast Induced Liquefaction of Water Saturated Sands Using 250 m Long Horizontal Holes and Electronic Detonators
By M. Ganster, H. Krenn
The mission of the project is the fast and cost-effective rehabilitation of decommissioned lignite mining and coal upgrading facilities. This is necessary to ensure the successful future utilization o
Jan 1, 2013
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Blasting Program Optimization with Emphasis on the Control of Blast Vibration and Airblast
By Frank Sames
Most Blasting Programs are developed focussing on the environmental impact with respect to blast vibration and airblast. Compliance with existing regulations or policies limiting the immissions are ge
Jan 1, 2000
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Ore Waste and Dilution Studies of Surface Mineral Blasting with 3D Distinct Element Heave Models
By Stewart A. Silling, Dale S. Preece
The two key results of rock blasting are fragmentation and movement of geomaterials. Movement/flow of the blasted rock is often referred to as heave. Modeling the movement of full scale blasting is no
Jan 1, 2016